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Catalysts for Hydrogen Generation via Oxy–Steam Reforming of Methanol Process

机译:甲醇工艺氧蒸汽重整的氢气催化剂

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摘要

The production of pure hydrogen is one of the most important problems of the modern chemical industry. While high volume production of hydrogen is well under control, finding a cheap method of hydrogen production for small, mobile, or his receivers, such as fuel cells or hybrid cars, is still a problem. Potentially, a promising method for the generation of hydrogen can be oxy–steam-reforming of methanol process. It is a process that takes place at relatively low temperature and atmospheric pressure, which makes it possible to generate hydrogen directly where it is needed. It is a process that takes place at relatively low temperature and atmospheric pressure, which makes it possible to generate hydrogen directly where it is needed. This paper summarizes the current state of knowledge on the catalysts used for the production of hydrogen in the process of the oxy–steam-reforming of methanol (OSRM). The development of innovative energy generation technologies has intensified research related to the design of new catalysts that can be used in methanol-reforming reactions. This review shows the different pathways of the methanol-reforming reaction. The paper presents a comparison of commonly used copper-based catalysts with other catalytic systems for the production of H2 via OSRM reaction. The surface mechanism of the oxy–steam-reforming of methanol and the kinetic model of the OSRM process are discussed.
机译:纯氢的生产是现代化学工业中最重要的问题之一。虽然氢气的高批量生量在控制下,但为小型,移动或他的接收器(如燃料电池或混合动力汽车)寻找廉价的氢生产方法仍然是一个问题。潜在地,对氢气产生的有希望的方法可以是氧蒸汽重整的甲醇方法。它是在相对低的温度和大气压下发生的过程,这使得可以直接产生氢气。它是在相对低的温度和大气压下发生的过程,这使得可以直接产生氢气。本文总结了用于在氧蒸汽重整甲醇(OSRM)的氧蒸汽重整过程中用于生产氢气的催化剂的当前知识状态。创新的能源发电技术的开发加剧了与新型催化剂设计相关的研究,可用于甲醇重整反应。本综述显示了甲醇重整反应的不同途径。本文介绍了常用铜基催化剂与其他催化系统的比较,以通过OSRM反应生产H 2。探讨了甲醇的氧蒸汽重整的表面机制及osrm工艺的动力学模型。

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